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Non-linear Modeling of a Multi-Layer Switched Reluctance Motor with Magnetically-Disconnected Stator Modules

机译:具有磁断开定子模块的多层开关磁阻电动机的非线性建模

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Analytical modelings are not only rapid tools for the analysis of electrical machines, but also are precise enough compared to numerical methods. On the other hand, switched reluctance machines have non-linear magnetic features and doubly-salient configuration. Due to these features, finite element analysis (FEA) is usually applied to attain the main characteristics of the machine which is time-consuming. In this research, an improved non-linear magnetic equivalent circuit (NLMEC) for a fault-tolerant modular switched reluctance motor with three layers of C-shape stators is developed to achieve the main features of the motor. To clarify the accuracy of the model, a 3D finite element analysis is adopted, and the results are compared with analytical solutions. Thanks to FEA, it is elucidated that the results attained from the developed circuit are accurate enough in comparison with those issued from FEA. It is also illustrated that this method saves a large time compared to FEA, which is a valuable factor for preliminary design stages.
机译:分析建模不仅是对电机分析的快速工具,而且与数值方法相比还足够精确。另一方面,开关磁阻机具有非线性磁性和双重突出的配置。由于这些特征,通常施加有限元分析(FEA)以获得耗时的机器的主要特性。在该研究中,开发了一种具有三层C形测定的容错模块化开关电动机的改进的非线性磁性等效电路(NLMEC),以实现电动机的主要特征。为了澄清模型的准确性,采用了3D有限元分析,并将结果与​​分析解决方案进行了比较。由于FEA,阐明了从发发电路中获得的结果与来自FEA发布的那些相比,所获得的结果足够准确。还示出了与FEA相比,该方法节省了很大的时间,这是初步设计阶段的有价值的因素。

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